Beier Sebastian, Himmelbach Axel, Schmutzer Thomas, Felder Marius, Taudien Stefan, Mayer Klaus F X, Platzer Matthias, Stein Nils, Scholz Uwe, Mascher Martin
Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben, Stadt Seeland, Germany.
Leibniz Institute on Aging-Fritz Lipmann Institute (FLI), Jena, Germany.
Plant Biotechnol J. 2016 Jul;14(7):1511-22. doi: 10.1111/pbi.12511. Epub 2016 Jan 23.
Hierarchical shotgun sequencing remains the method of choice for assembling high-quality reference sequences of complex plant genomes. The efficient exploitation of current high-throughput technologies and powerful computational facilities for large-insert clone sequencing necessitates the sequencing and assembly of a large number of clones in parallel. We developed a multiplexed pipeline for shotgun sequencing and assembling individual bacterial artificial chromosomes (BACs) using the Illumina sequencing platform. We illustrate our approach by sequencing 668 barley BACs (Hordeum vulgare L.) in a single Illumina HiSeq 2000 lane. Using a newly designed parallelized computational pipeline, we obtained sequence assemblies of individual BACs that consist, on average, of eight sequence scaffolds and represent >98% of the genomic inserts. Our BAC assemblies are clearly superior to a whole-genome shotgun assembly regarding contiguity, completeness and the representation of the gene space. Our methods may be employed to rapidly obtain high-quality assemblies of a large number of clones to assemble map-based reference sequences of plant and animal species with complex genomes by sequencing along a minimum tiling path.
层次鸟枪法测序仍然是组装复杂植物基因组高质量参考序列的首选方法。要有效利用当前的高通量技术和强大的计算设备进行大插入片段克隆测序,就需要并行对大量克隆进行测序和组装。我们开发了一种多重流程,用于使用Illumina测序平台对单个细菌人工染色体(BAC)进行鸟枪法测序和组装。我们通过在单个Illumina HiSeq 2000泳道中对668个大麦BAC(大麦)进行测序来说明我们的方法。使用新设计的并行计算流程,我们获得了单个BAC的序列组装,平均由八个序列支架组成,代表了> 98%的基因组插入片段。在连续性、完整性和基因空间代表性方面,我们的BAC组装明显优于全基因组鸟枪法组装。我们的方法可用于快速获得大量克隆的高质量组装,通过沿最小拼接路径测序来组装具有复杂基因组的植物和动物物种的基于图谱的参考序列。